Defects usually play an important role in tuning and modifying various properties of semiconducting or insulating materials. Therefore, we study the impact of point and line defects on the electronic structure and optical properties of MoS2 monolayers using density-functional methods. The different types of defects form electronic states that are spatially localized on the defect. The strongly localized nature is reflected in weak electronic interactions between individual point or line defects, a weak dependence of the defect formation energy on the defect concentration or line defect separation, and sharply peaked defect states in the energy spectrum. The electronic structure of the monolayer system is quite robust and it is well preserve...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
The nature of the S-vacancy is central to controlling the electronic properties of monolayer MoS2. U...
Defects usually play an important role in tuning and modifying various properties of semiconducting ...
Atomic-scale intrinsic defects play a key role in controlling functional electronic properties of tw...
Atomic-scale intrinsic defects play a key role in controlling functional electronic properties of tw...
The relation between the microscopic structure and the optical properties of atomic defects in 2D se...
The nonzero thickness of single-layer (SL) MoS2 manifests in electron states forming classes of stat...
We present a computational study on the impact of line defects on the electronic properties of monol...
Defects usually play an important role in tailoring various properties of two-dimensional materials....
Defects usually play an important role in tailoring various properties of two-dimensional materials....
We present a computational study on the impact of line defects on the electronic properties of monol...
Defects in two-dimensional (2D) transition metal dichalcogenides (TMDs) greatly influence their elec...
We present a computational study on the impact of line defects on the electronic properties of monol...
This study is a computational investigation of the electronic structure of the eight most-frequently...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
The nature of the S-vacancy is central to controlling the electronic properties of monolayer MoS2. U...
Defects usually play an important role in tuning and modifying various properties of semiconducting ...
Atomic-scale intrinsic defects play a key role in controlling functional electronic properties of tw...
Atomic-scale intrinsic defects play a key role in controlling functional electronic properties of tw...
The relation between the microscopic structure and the optical properties of atomic defects in 2D se...
The nonzero thickness of single-layer (SL) MoS2 manifests in electron states forming classes of stat...
We present a computational study on the impact of line defects on the electronic properties of monol...
Defects usually play an important role in tailoring various properties of two-dimensional materials....
Defects usually play an important role in tailoring various properties of two-dimensional materials....
We present a computational study on the impact of line defects on the electronic properties of monol...
Defects in two-dimensional (2D) transition metal dichalcogenides (TMDs) greatly influence their elec...
We present a computational study on the impact of line defects on the electronic properties of monol...
This study is a computational investigation of the electronic structure of the eight most-frequently...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
For two-dimensional (2D) layered semiconductors, control over atomic defects and understanding of th...
The nature of the S-vacancy is central to controlling the electronic properties of monolayer MoS2. U...